System for piercing a plurality of aerosol cans

The multi-aerosol can perforation system addresses the inefficiency of single-can perforation by using a can holder and vertically movable perforated pins to perforate multiple aerosol cans in one operation, enhancing efficiency and drainage.

JP7672385B2Active Publication Date: 2025-05-07NEW PIG CORP
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Patent Information

Application Number
JP2022505560
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-08-01
Filing Date
2020-07-31
Publication Date
2025-05-07
Estimated Expiration
2040-07-31

AI Technical Summary

Technical Problem

Conventional aerosol can perforation units can only perforate and empty one aerosol can at a time, which is inefficient and time-consuming for recycling purposes.

Method used

A multi-aerosol can perforation system that uses a can holder with multiple chambers and a vertically movable actuating plate with perforated pins to perforate the lids of multiple aerosol cans in a single operation.

Benefits of technology

Enables the efficient perforation and emptying of multiple aerosol cans simultaneously, reducing operator cycle times and improving the drainage process by allowing sequential perforation and vertical movement of the drilling actuation assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

A multiple aerosol can piercing system 10 is disclosed that can pierce multiple aerosol cans 80 in a single operation. A can holder 20 having multiple chambers 21, 22, 23, 24 and a movable lid 30 is used to store the aerosol cans. A vertically movable actuator plate 12 having multiple hollow piercing pins 71, 72, 73, 74 is raised toward the can holder to pierce the aerosol can lids. The heights of the piercing pins may be staggered to pierce sequential lids during the same punching operation.
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Description

[Technical field]

[0001] <Cross-reference to related applications> This application claims the benefit of U.S. Provisional Patent Application No. 62 / 881,572, filed August 1, 2019, which is incorporated herein by reference.

[0002] <Field of the Invention> The present invention relates to a system for piercing and emptying multiple aerosol cans in a single operation. [Background technology]

[0003] Conventional aerosol can piercing units are capable of piercing and emptying a single aerosol can so that it is acceptable for recycling. Such single can units may be attached to the lid of a waste container, such as a 55 gallon drum, that contains the emptied contents of an individual aerosol can. Summary of the Invention

[0004] The present invention provides a multiple aerosol can piercing system capable of piercing multiple aerosol cans in one operation. A can holder with multiple chambers and a movable lid are used to hold the aerosol cans. A vertically movable actuator plate having multiple hollow piercing pins is raised toward the can holder to pierce the lids of the aerosol cans. The heights of the piercing pins may be staggered to pierce sequential lids in the same piercing operation.

[0005] One aspect of the invention provides an aerosol can piercing system comprising: a base having a bottom drain for attachment to an exhaust drum; a can holder supported by the base and arranged to receive a plurality of aerosol cans to be pierced; a lid constructed and arranged to removably cover the can holder; and a piercing actuation assembly comprising a base plate having a plurality of piercing pins attached thereto, the can holder and the base plate being vertically movable relative to one another to pierce a plurality of aerosol cans by inserting the plurality of piercing pins into the can holder.

[0006] Another aspect of the invention provides a method for piercing a plurality of aerosol cans in a single piercing operation, the method including the steps of placing a plurality of aerosol cans in a can holder having a plurality of chambers, each chamber receiving one of the plurality of aerosol cans, and inserting a plurality of piercing pins into the plurality of aerosol cans to pierce all of the aerosol cans, the plurality of piercing pins being attached to a base plate, the can holder and the base plate being vertically movable relative to one another, each of the plurality of piercing pins being individually aligned with one of the plurality of aerosol cans, and relative vertical movement of the can holder and the base plate causing the plurality of piercing pins to pierce the plurality of aerosol cans during the relative vertical movement.

[0007] A further aspect of the invention provides an aerosol can piercing system comprising: a base having a bottom drain constructed and arranged to be attached to an exhaust drum; a can holder supported by the base and constructed and arranged to receive at least one aerosol can to be pierced; a lid constructed and arranged to removably cover the can holder; and a piercing actuation assembly comprising a base plate having at least one piercing pin attached thereto, the base plate being movable vertically upwardly towards the can holder to insert the at least one piercing pin into the can holder, thereby piercing the at least one aerosol can.

[0008] These and other aspects of the invention will become more apparent from the following description. [Brief description of the drawings]

[0009] [Figure 1] FIG. 1 is an isometric view of an aerosol can piercing system of the present invention mounted on a waste drum.

[0010] [Diagram 2] FIG. 2 is an isometric view of the aerosol can piercing system of FIG. 1 with the lid of the system in a raised position.

[0011] [Diagram 3] 3 is a side view of the aerosol can piercing system of FIG. 1 with the lid in a raised rotated position.

[0012] [Figure 4] FIG. 4 is a plan view of the aerosol can piercing system of FIG.

[0013] [Diagram 5] FIG. 5 is a side view of an aerosol can piercing system similar to FIG. 3, with a plurality of aerosol cans loaded to be pierced and emptied.

[0014] [Figure 6] FIG. 6 is a side view of the aerosol can piercing system with the lid closed and the actuation handle in the lower can piercing position.

[0015] [Figure 7] FIG. 7 is a front view of the aerosol can piercing system of FIG.

[0016] [Figure 8] FIG. 8 is a side cross-sectional view taken along line 8-8 of FIG. 6, with the system in a can piercing configuration.

[0017] [Figure 9]FIG. 9 is a side cross-sectional view similar to FIG. 8, but with the lid and actuation handle in the raised position.

[0018] [Figure 10] FIG. 10 is an exploded side view showing the components of the aerosol can piercing system. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0019] 1-10 illustrate an aerosol can piercing system 10 according to an embodiment of the present invention, capable of piercing and emptying multiple aerosol cans in a single operation. As shown diagrammatically in FIGS. 1 and 2, the aerosol can piercing system 10 can be attached to a waste drum 5 (shown in phantom), such as a typical 50 gallon drum. The aerosol can piercing system 10 includes a base 12 having a bottom wall 14 with a central bottom drain 15 and a side wall 16. A threaded collar 17 is provided at the bottom of the drain 15, which may be sized to interface with a standard threaded opening (not shown) in the waste drum 5. Support legs 18 are attached to the bottom wall 14 of the base 12 and contact the upper rim of the waste drum 5 to support the aerosol can piercing system 10 during use.

[0020] As shown in Figures 1-10, the aerosol can piercing system 10 includes a can holder 20 having a first chamber 21, a second chamber 22, a third chamber 23, and a fourth chamber 24. Each of the first, second, third, and fourth chambers 21-24 includes a bottom opening 25, as shown most clearly in the plan view of Figure 4 and the cross-sectional views of Figures 8 and 9. Each of the first, second, third, and fourth chambers 21-24 has a generally cylindrical side wall 26 and an upper opening 27. Although four chambers are shown in the figures, any other suitable number of chambers may be used, such as two, three, five, six, etc. In this manner, a plurality of aerosol cans 80 may be loaded into the aerosol can piercing system 10 and pierced and emptied in a single operation.

[0021] As shown most clearly in Figures 8 and 9, an annular gasket seal 28 is provided at the bottom of each of the first, second, third and fourth chambers 21-24 and is supported by an annular shoulder 29 at the bottom of each chamber.

[0022] 1-10, a lid 30 is attached to the base 12, and the lid 30 removably engages the can holder 20. The lid 30 includes a first dome 31, a second dome 32, a third dome 33, and a fourth dome 34. Each of the first, second, third, and fourth domes 31-34 has a generally cylindrical sidewall 35 that terminates in a lower circular opening.

[0023] Lid 30 is attached to base 12 by a lid support rod 40 attached at its lower end to a base connector 41 and slidably engaging a lid connector 42 fixed to the lid 30. A thumb lock 43 on lid connector 42 can be pivoted into engagement with support rod 40 to releasably hold lid 30 in a variety of vertical and rotational positions.

[0024] In Figures 1 and 6-8, the lid 30 is in a closed position such that each of the first, second, third and fourth domes 31-34 covers each of the first, second, third and fourth chambers 21-24, respectively. In Figures 2 and 9, the lid 30 has been raised to a position vertically above the can holder 20. In Figures 3-5, the lid 30 has been raised vertically and rotated 180 degrees about the vertical axis of the lid support rod 40 to provide access for inserting and removing an aerosol can 80 into each of the first, second, third and fourth chambers 21-24.

[0025] As shown in Figures 8-10, a vertically adjustable hold-down shoe 36 is attached to the bottom of a threaded hold-down rod 37. Each of the first, second, third and fourth domes 31-34 has a central threaded hole 38 which threadably engages with the respective hold-down rod 37. The hold-down shoe 36 is height adjustable to accommodate aerosol canisters 80 of various heights. As further shown in Figures 8 and 9, each aerosol canister 80 includes a lid 81 which is inserted downwardly into the canister holder 20 and pierced during the stripping operation, as described more fully below.

[0026] A lid lock assembly 44 is provided to lock the lid 30 in its closed position during the extraction operation. The lid lock assembly 44 includes a lock bar 45 pivotally mounted to the base 12 by a pivot mount 46. A sliding bracket 47 is slidably engaged with the lock bar 45. A pivot handle 48 is pivotally mounted to the sliding bracket 47. In Figs. 2-5, the lid lock assembly 44 is in an open position, and in Figs. 1, 6 and 7, the lid lock assembly 44 is in a locked position. In the open position shown in Fig. 5, the sliding bracket 47 moves freely along the lock bar 45. When the lid 30 is moved to the closed position shown in Fig. 6, the lid lock assembly 44 rotates to position the sliding bracket 47 and the pivot handle 48 above the lid 30. The sliding bracket 47 and the pivot handle 48 are lowered until the pivot handle 48 contacts a flat brace on the lid 30. Pivot handle 48 is then rotated to apply sufficient pressure to lid 30 to prevent the lid from moving vertically.

[0027] The vertically movable drilling actuation assembly 50 includes a base plate 51, a central flange 52, and a reciprocating actuation rod 53. The reciprocating actuation rod 53 has an upper connection tab 54 with a hole for pivotally mounting to the actuation handle assembly 60. As shown in Figures 8-10, a first piercing pin 71, a second piercing pin 72, a third piercing pin 73, and a fourth piercing pin 74 are fixed to the base plate 51 of the vertically movable drilling actuation assembly 50. A plug or stopper 56 is attached to the bottom surface of the base plate 51. When the base plate 51 is in its lowered position, as shown in Figure 9, the stopper 56 fits and seals against the drain 15 of the base. When the base plate is in its raised position, as shown in Figure 8, the stopper is disengaged from the drain 15.

[0028] The aerosol can piercing system 10 includes an actuation handle assembly 60 having an actuation bar 61 and a handle 62 at one end of the actuation bar 61. The other end of the actuation bar 61 is provided with an end slot 63 and an end hole 64. The end slot 63 receives the upper connecting tab 54 of the reciprocating actuation rod 53, and a connecting pin 65 extending through the end hole 64 of the end slot 63 and the hole in the upper connecting tab 54 provides a rotational connection between the actuation rod 53 and the actuation bar 61. The actuation bar 61 is pivotally attached to the can holder 20 by a pivot hole 66 located between the end hole 64 and the handle 62 and passing through the actuation bar 61. A generally U-shaped support bracket 67 attached to the upper surface of the can holder 20 receives a portion of the actuation bar 61 therein, and a pivot pin 68 inserted through the bracket 67 and the pivot hole 66 provides a pivotal attachment of the actuation handle assembly 60 to the can holder 20. The illustrated actuation handle assembly 60 includes a manual handle 62, however, it will be understood that the actuation handle assembly may be automatically actuated, for example, through the use of pneumatic, hydraulic, electrical, or other automated systems known to those skilled in the art.

[0029] Each of the first, second, third and fourth piercing pins 71-74 has a base mounting 75 for mounting to the base plate 51 of the vertically movable piercing actuation assembly 50. The first, second, third and fourth piercing pins 71-74 have hollow cylindrical bodies with angled piercing tips 77 at their tops. As will be described in more detail below, the piercing tips 77 may be staggered in height to sequentially pierce the ends 81 of the aerosol canisters 80 during a stripping operation.

[0030] As the handle 62 is lowered, the actuator bar 61 of the handle assembly 60 rotates about pivot pin 68 of the support bracket 67. The upper part of the actuator rod 53 is pivotally attached to the distal end of the actuator bar 61 by a connecting pin 65. A base plate 51 attached to the lower part of the actuator rod 53 supports four hollow piercing pins 71, 72, 73 and 74 which pierce the upper part 81 of each aerosol canister 80 when the actuator bar 61 and handle 62 are moved to the lowered position shown in Figures 6-8. As each aerosol canister 80 is pierced, any liquid remaining in each canister flows into a funnel-shaped outlet or drain 15.

[0031] According to an embodiment of the present invention, some or all of the hollow piercing pins 71, 72, 73 and 74 are of different lengths such that the piercing of the aerosol can 80 is staggered. In this manner, the piercing of the aerosol can 80 can be accomplished sequentially with a single actuation of the actuation handle assembly 60. The lengths of the hollow piercing pins 71-74 may vary relative to one another by 0 to 1 inch, e.g., 0.05 to 0.5 inch, or 0.1 to 0.25 inch. Thus, their angled piercing tips 77 are provided at different heights.

[0032] By offsetting the height of one, two, three, or four of pierce pins 71-74, the actuation force required to pierce all of cans 80 in one operation may be reduced, typically by 10%, or 20%, or 30%. For example, it has been found that when pierce pins 71 and 73 are shorter than pierce pins 72 and 74, the actuation force applied to handle 62 of actuator arm 60 is reduced from 37 pounds to 23 pounds, which represents a 38% reduction in the actuation force required to pierce cans 80.

[0033] The illustrated aerosol can piercing system 10 can handle up to four cans 80 at a time. The cans 80 can be placed with their lids 81 facing down into the multiple chambers 21, 22, 23, and 24, which can accommodate aerosol cans of various sizes by adjusting the can retainer shoe 36. The thumb lock 43 and lid lock assembly 44 engage to prevent the released propellant from forcing the lid 30 open. When the piercing actuation handle 62 is pressed downward, the base plate 51 and piercing pins 71-74 move upward to pierce the aerosol can 80. Any fluid and propellant remaining in the aerosol can 80 passes through the hollow pins 71-74 into the base 12 and is discharged into the waste drum 5. During such piercing and can-opening operations, the can holder 20, lid 30 and can 80 remain stationary, and the vertical upward movement of the piercing actuation assembly 50 and piercing pins 71-74 pierces the lid 81, i.e., one or more cans 80, loaded into the piercing system 10. As mentioned above, the lengths of at least two of the piercing pins 71-74 may be different so that they do not all pierce aerosol cans 80 simultaneously, thereby requiring less force on the actuation handle 62 to pierce multiple cans during one lever actuation. All of the hollow piercing pins 71-74 may be of different lengths, two pins may be one length and the other two pins may be another length, for example, the diagonally opposite piercing pins 71 and 73 may be the same length as each other. Once the can has been pierced and emptied, the lid 30 is opened and the can is manually removed from the can holder 20.

[0034] The piercing pins 71-74 and other surfaces that may be exposed to liquid discharged from the aerosol can 80 may be coated with a low surface energy, durable material such as polytetrafluoroethylene (PTFE or Teflon®) to reduce fouling of the surfaces.

[0035] A disposable drain pan (not shown) may be positioned in the bottom wall 14 of the liquid funnel area of ​​the base 12 below the actuation plate 51 and may extend at least partially down to the neck of the drain opening 15. When the installed disposable drain pan becomes soiled or coated with liquid dispensed from the aerosol can, it can be removed and discarded and a new drain pan installed. The drain pan may be made from a low surface energy, durable material such as polyolefin.

[0036] The advantages of the multiple aerosol can piercing system of the present invention include the ability to pierce multiple cans in one operation (faster cycle time for the operator), sequential piercing of cans (reducing actuation piercing force), vertical design promotes complete drainage of cans, and can be easily adapted to pneumatic, hydraulic or electric actuation systems.

[0037] As used herein, "comprising" and similar terms are understood to be synonymous with "comprising" in the context of this application and are therefore open ended and do not exclude the presence of additional elements, materials, phases or method steps not described or mentioned. As used herein, "consisting of" is understood in the context of this specification to exclude the presence of any unspecified element, material, phase or method step. As used herein, "consisting essentially of" is understood in the context of this specification to include the specified elements, materials, phases or method steps, if applicable, and also to include unspecified elements, materials, phases or method steps that do not materially affect the basic or novel characteristics of the invention.

[0038] Notwithstanding that the numerical ranges and parameters setting forth the broad scope of the invention are approximations, the numerical values ​​set forth in the specific examples are reported as precisely as possible, however, any values ​​inherently contain certain errors resulting from the standard deviation in their respective testing measurements.

[0039] It should also be understood that any numerical range recited herein is intended to include all subranges contained therein, for example, a range "1 to 10" is intended to include all subranges between (and including) the recited minimum value of 1 and the recited maximum value of 10, i.e., having a minimum value of 1 or more and a maximum value of 10 or less.

[0040] In this application, the use of the singular includes the plural and the plural encompasses the singular, unless specifically stated otherwise. Also, in this application, the use of "or" means "and / or" unless specifically stated otherwise, even though in specific instances "and / or" may be expressly used. In this specification and claims, "a" and "the" include plural referents unless expressly and unambiguously limited to one referent.

[0041] Although particular embodiments of the invention have been described for purposes of illustration, it will be apparent to those skilled in the art that many modifications to the details of the invention can be made without departing from the invention as defined in the claims.

Claims

1. a base having a bottom drain for attachment to an exhaust drum; a can holder supported on the base and arranged to receive a plurality of aerosol cans to be pierced; a lid constructed and arranged to removably cover said can holder; a drilling actuation assembly including a base plate having a plurality of drilling pins mounted thereon; It is equipped with the can holder and the base plate are vertically movable relative to one another to pierce the aerosol cans by inserting the piercing pins into the can holder; Each of the plurality of piercing pins has an upper piercing tip, and at least one of the plurality of piercing tips is located at a different height than other piercing tips measured from a top surface of the base plate.

2. 2. The aerosol can piercing system of claim 1, wherein the can holder is stationary and the base plate and the plurality of piercing pins are vertically movable upward toward the stationary can holder.

3. 3. The aerosol can piercing system of claim 2, further comprising an actuation handle assembly comprising an actuation bar attached to the can holder and constructed and arranged to pull the base plate vertically upward.

4. 4. The aerosol can piercing system of claim 3, further comprising a reciprocating actuation rod including a lower end connected to the base plate and an upper end pivotally connected to a distal end of the actuation bar.

5. 10. The aerosol can piercing system of claim 1, wherein the can holder comprises four chambers constructed and arranged to hold up to four aerosol cans.

6. 6. The aerosol can piercing system of claim 5, wherein the lid comprises four domes constructed and arranged to removably cover the four chambers of the can holder.

7. 6. The aerosol can piercing system of claim 5, comprising four of said plurality of piercing pins, each of said plurality of piercing pins constructed and arranged for insertion into one of said four chambers of said can holder.

8. 8. The aerosol can piercing system of claim 7, wherein at least one of the four piercing pins has a different height, measured from a top surface of the base plate, than the other piercing pins.

9. 2. The aerosol can piercing system of claim 1, wherein each of the plurality of piercing pins is hollow and secured to the base plate by a connector constructed and arranged to allow passage through the base plate for draining fluid discharged from the aerosol can through a bottom drain of the base.

10. 2. The aerosol can piercing system of claim 1, wherein all of said plurality of piercing tips are disposed at different heights.

11. 2. The aerosol can piercing system of claim 1, wherein two of the plurality of piercing tips are located at a first height and another two of the plurality of piercing tips are located at a second height different from the first height.

12. 12. The aerosol can piercing system of claim 11, wherein the two piercing pins having two piercing tips located at the first height are radially opposed to each other at 180° intervals measured circumferentially about the vertical central axis of the base plate.

13. 2. The aerosol can piercing system of claim 1, wherein the different height of the at least one piercing tip differs from the height of at least one other of the plurality of piercing tips by 0.05 to 0.5 inches.

14. 2. The aerosol can piercing system of claim 1, comprising a plurality of hold-down shoes constructed and arranged to contact base ends of the plurality of aerosol cans when the plurality of aerosol cans are placed in the can holder and the lid covers the can holder.

15. 15. The aerosol can piercing system of claim 14, wherein each of the plurality of hold-down shoes is vertically adjustable to accommodate aerosol cans of different heights.

16. 16. The aerosol can piercing system of claim 15, wherein each of the plurality of hold-down shoes is attached to a lower end of a threaded hold-down rod, and an upper end of each threaded hold-down rod threadably engages a separate threaded hole in the lid.

17. 2. The aerosol can piercing system of claim 1, wherein the lid is slidably mounted on a vertical lid support rod, the lower end of the vertical lid support rod being fixed to a base connector connected to the base.

18. 18. The aerosol can piercing system of claim 17, wherein the lid comprises a lid coupler configured and arranged to allow the lid to move vertically relative to the can holder and to slidably and rotatably receive the vertical lid support rod to allow the lid to rotate about a vertical axis to an open loading position that is not vertically above the can holder.

19. 20. The aerosol can piercing system of claim 18, including a thumb lock attached to the lid connector and constructed and arranged to releasably engage the vertical lid support rod to maintain the lid in a selected position relative to the can holder.

20. 2. The aerosol can piercing system of claim 1, further comprising a lid lock assembly including a lock bar having a lower end pivotally mounted to the base, a sliding bracket slidably mounted to the lock bar, and a pivot handle rotatably mounted to the sliding bracket, the pivot handle constructed and arranged to releasably contact the lid to prevent the lid from moving vertically upward.

21. 2. The aerosol can piercing system of claim 1, further comprising a stopper attached to a bottom of the base plate of the piercing actuation assembly and constructed and arranged to seal the bottom drain of the base when the base plate is in a lowered position.

22. 1. A method for piercing a plurality of aerosol cans in a single piercing operation, comprising: placing a plurality of aerosol cans in a can holder having a plurality of chambers, each chamber receiving one of the plurality of aerosol cans; inserting a plurality of piercing pins into the plurality of aerosol cans to pierce all of the aerosol cans; Contains the plurality of piercing pins are attached to a base plate, the can holder and the base plate being movable vertically relative to one another, each of the plurality of piercing pins being individually aligned with one of the plurality of aerosol cans, and relative vertical movement of the can holder and the base plate causes the plurality of piercing pins to pierce the plurality of aerosol cans during the relative vertical movement; Each of the plurality of piercing pins has an upper piercing tip, and at least one of the plurality of piercing tips is located at a different height than the other piercing tips, measured from a top surface of the base plate.

23. 23. The method of claim 22, wherein the can holder is stationary and the base plate and the plurality of piercing pins move vertically upward toward the stationary can holder.

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